Department of Pharmaceutical Analysis and Nuclear Pharmacy, Faculty of Pharmacy, Comenius University in Bratislava, Odbojarov 10, SK-832 32 Bratislava, Slovak Republic; Toxicological and Antidoping Center, Faculty of Pharmacy, Comenius University in Bratislava, Odbojarov 10, SK-832 32 Bratislava, Slovak Republic.
Department of Pharmaceutical Analysis and Nuclear Pharmacy, Faculty of Pharmacy, Comenius University in Bratislava, Odbojarov 10, SK-832 32 Bratislava, Slovak Republic.
J Chromatogr A. 2021 Jul 5;1648:462190. doi: 10.1016/j.chroma.2021.462190. Epub 2021 Apr 27.
A two-dimensional capillary isotachophoresis-capillary zone electrophoresis method hyphenated with tandem mass spectrometry was developed and validated for ultrasensitive quantification of serotonin in real human urine samples. Under optimal conditions, the separation was achieved within 12 min (including on-line sample preparation) with the limit of detection of 34 pg mL (due to a large volume sample injection, here 10 µL, and isotachophoretic preconcentration). This concentration limit represents the lowest value for serotonin in comparison to other previously published separation methods employing mass spectrometry detection and applied to urine matrices. Thanks to high orthogonality, on-line concentration and clean-up effects of this approach, other excellent validation parameters such as linearity (coefficient of determination > 0.99), inter-day and intra-day precision (relative standard deviations 3.5-12.2%), accuracy (relative errors within 99-109.4%), and recovery (96-102%) could be easily obtained too. To demonstrate applicability of the method, we monitored serotonin levels in various real samples (from a healthy volunteer and clinical ones). The determined levels, normalized on the creatinine concentrations, were in the range of 6.81-12.86 ng mmol creatinine This advanced method is suggested for an effective, reliable, high sample throughput, and low cost routine clinical screening or targeted metabolomic studies of serotonin in urine samples.
建立并验证了一种二维胶束电动色谱-串联质谱联用方法,用于灵敏检测真实人体尿液样品中的血清素。在最佳条件下,12 分钟内(包括在线样品制备)即可完成分离,检测限为 34pgmL(由于采用大体积进样,即 10μL,以及胶束电动色谱预浓缩)。与其他先前发表的采用质谱检测并应用于尿液基质的分离方法相比,这种浓度限度代表了血清素的最低值。由于该方法具有高正交性、在线浓缩和净化效果,因此还可以轻松获得其他出色的验证参数,如线性(决定系数>0.99)、日间和日内精密度(相对标准偏差 3.5-12.2%)、准确度(相对误差在 99-109.4%)和回收率(96-102%)。为了证明该方法的适用性,我们监测了各种真实样品(来自健康志愿者和临床样品)中的血清素水平。经肌酐浓度归一化后,测定的血清素水平范围为 6.81-12.86ngmmol肌酐。这种先进的方法可用于有效、可靠、高通量、低成本的常规临床筛查或尿液样品中血清素的靶向代谢组学研究。